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与羧肽酶B结合的强效硫醇类抑制剂的晶体结构

Crystal structures of potent thiol-based inhibitors bound to carboxypeptidase B.

作者信息

Adler Marc, Bryant Judi, Buckman Brad, Islam Imadul, Larsen Brent, Finster Silke, Kent Lorraine, May Karen, Mohan Raju, Yuan Shendong, Whitlow Marc

机构信息

Berlex Biosciences, 2600 Hilltop Drive, P.O. Box 4099, Richmond, California 94804-0099, USA.

出版信息

Biochemistry. 2005 Jul 5;44(26):9339-47. doi: 10.1021/bi0501941.

Abstract

This paper presents the crystal structure of porcine pancreatic carboxypeptidase B (pp-CpB) in complex with a variety of thiol-based inhibitors that were developed as antagonists of activated thrombin-activatable fibrinolysis inhibitor (TAFIa). Recent studies have indicated that a selective inhibitor of TAFIa could enhance the efficacy of existing thrombolytic agents for the treatment of acute myocardial infarction, one of the most prevalent forms of heart attacks. Unfortunately, activated TAFIa rapidly degrades in solution and cannot be used for crystallographic studies. In contrast, porcine pancreatic CpB is stable at room temperature and is available from commercial sources. Both pancreatic CpB and TAFIa are zinc-based exopeptidases, and the proteins share a 47% sequence identity. The homology improves considerably in the active site where nearly all of the residues are conserved. The inhibitors used in this study were designed to mimic a C-terminal arginine residue, one of the natural substrates of TAFIa. The X-ray structures show that the thiol group chelates the active site zinc, the carboxylic acid forms a salt bridge to Arg145, and the guanidine group forms two hydrogen bonds to Asp255. A meta-substituted phenyl was introduced into our inhibitors to reduce conformational freedom. This modification vastly improved the selectivity of compounds against other exopeptidases that cleave basic residues. Comparisons between structures indicate that selectivity derives from the interaction between the guanidine group in the inhibitors and an acidic active site residue. The location of this acidic residue is not conserved in the various carboxypeptidases.

摘要

本文介绍了猪胰羧肽酶B(pp-CpB)与多种基于硫醇的抑制剂形成复合物的晶体结构,这些抑制剂是作为活化凝血酶激活的纤维蛋白溶解抑制剂(TAFIa)的拮抗剂开发的。最近的研究表明,TAFIa的选择性抑制剂可以增强现有溶栓药物治疗急性心肌梗死(最常见的心脏病发作形式之一)的疗效。不幸的是,活化的TAFIa在溶液中迅速降解,无法用于晶体学研究。相比之下,猪胰CpB在室温下稳定,可从商业渠道获得。胰CpB和TAFIa都是基于锌的外肽酶,这两种蛋白质的序列同一性为47%。在几乎所有残基都保守的活性位点,同源性有显著提高。本研究中使用的抑制剂被设计成模拟TAFIa的天然底物之一C末端精氨酸残基。X射线结构表明,硫醇基团螯合活性位点的锌,羧酸与Arg145形成盐桥,胍基与Asp255形成两个氢键。在我们的抑制剂中引入了间位取代的苯基以减少构象自由度。这种修饰极大地提高了化合物对其他切割碱性残基的外肽酶的选择性。结构之间的比较表明,选择性源于抑制剂中的胍基与酸性活性位点残基之间的相互作用。这种酸性残基的位置在各种羧肽酶中并不保守。

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